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Rashid, W., Shi, J., Rahim, I. U., Qasim, M., Baloch, M. N., Bohnett, E., Yang, F., Khan, I., Ahmad, B. |
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Modelling Potential Distribution of Snow Leopards in Pamir, Northern Pakistan: Implications for Human–Snow Leopard Conflicts |
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Journal Article |
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2021 |
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Sustainability |
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13 |
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13229 |
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1-15 |
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habitat fragmentation; habitat suitability; land use/cover change; Panthera uncia; MaxEnt model |
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The snow leopard (Panthera uncia) is a cryptic and rare big cat inhabiting Asia’s remote and harsh elevated areas. Its population has decreased across the globe for various reasons, includ |
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SLN @ rakhee @ |
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1664 |
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Sultan, H., Rashid, W., Shi, J., Rahim, I. U., Nafees, M., Bohnett, E., Rashid, S., Khan, M. T., Shah, I. A., Han, H., Ariza-Montes, A. |
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Title |
Horizon Scan of Transboundary Concerns Impacting Snow Leopard Landscapes in Asia |
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Journal Article |
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Year |
2022 |
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MDPI |
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Land |
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11 |
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248 |
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1-22 |
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collaboration; habitat; innovative solutions; integrated landscape approach; socio- ecological system; trade corridor; tourism |
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The high-altitude region of Asia is prone to natural resource degradation caused by a variety of natural and anthropogenic factors that also threaten the habitat of critical top predator species, the snow leopard (Panthera uncia). The snow leopard’s landscape encompasses parts of the twelve Asian countries and is dominated by pastoral societies within arid mountainous terrain. However, no investigation has assessed the vulnerability and pathways towards long-term sustainability on the global snow leopard landscape scale. Thus, the current study reviewed 123 peer-reviewed scientific publications on the existing knowledge, identified gaps, and proposed sustainable mitigation options for the longer term and on larger landscape levels in the range countries. The natural resource degradation in this region is caused by various social, economic, and ecological threats that negatively affect its biodiversity. The factors that make the snow leopard landscapes vulnerable include habitat fragmentation through border fencing, trade corridor infrastructure, non-uniform conservation policies, human–snow leopard conflict, the increasing human population, climatic change, land use and cover changes, and unsustainable tourism. Thus, conservation of the integrated Socio-Ecological System (SES) prevailing in this region requires a multi-pronged approach. This paper proposes solutions and identifies the pathways through which to implement these solutions. The prerequisite to implementing such solutions is the adoption of cross-border collaboration (regional cooperation), the creation of peace parks, readiness to integrate transnational and cross-sectoral conservation policies, a focus on improving livestock management practices, a preparedness to control human population growth, a readiness to mitigate climate change, initiating transboundary landscape-level habitat conservation, adopting environment-friendly trade corridors, and promoting sustainable tourism. Sustainable development in this region encompasses the political, social, economic, and ecological landscapes across the borders. |
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SLN @ rakhee @ |
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1671 |
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Hacker, C., Atzeni, L., Munkhtsog, B., Munkhtsog, B., Galsandorj, N., Zhang, Y., Liu, Y., Buyanaa, C., Bayandonoi, G., Ochirjav, M., Farrington, J. D., Jevit, M., Zhang, Y., Wu, L. Cong, W., Li, D., Gavette, C., Jackson, R., Janecka, J. E. |
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Genetic diversity and spatial structures of snow leopards (Panthera uncia) reveal proxies of connectivity across Mongolia and northwestern China |
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2022 |
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Landscape Ecology |
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1-19 |
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Admixture · Central Asia · Connectivity · Habitat Modeling · Landscape Genetics · Noninvasive Genetics · MEM · Spatial Structures |
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Understanding landscape connectivity and population genetic parameters is imperative for threatened species management. However, such information is lacking for the snow leopard (Panthera uncia). This study sought to explore hierarchical snow leopard gene flow patterns and drivers of genetic structure in Mongolia and China. A total of 97 individuals from across Mongolia and from the north-eastern edge of the Qinghai-Tibetan Plateau in Gansu Province to the middle of Qinghai Province in China were genotyped across 24 microsatellite loci. Distance-based frameworks were used to determine a landscape scenario best explaining observed genetic structure. Spatial and non-spatial methods were used to investigate fine-scale autocorrelation and similarity patterns as well as genetic structure and admixture. A genetic macro-division between populations in China and Mongolia was observed, suggesting that the Gobi Desert is a substantial barrier to gene flow. However, admixture and support for a resistance-based mode of isolation suggests connective routes that could facilitate movement. Populations in Mongolia had greater connectivity, indicative of more continuous habitat. Drivers of genetic structure in China were difficult to discern, and fine-scale sampling is needed. This study elucidates snow leopard landscape connectivity and helps to prioritize conservation areas. Although contact zones may have existed and occasional crossings can occur, establishing corridors to connect these areas should not be a priority. Focus should be placed on maintaining the relatively high connectivity for snow leopard populations within Mongolia and increasing research efforts in China. |
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SLN @ rakhee @ |
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1717 |
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Islam, M., Sahana, M., Areendran, G., Jamir, C., Raj, K., Sajjad, H. |
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Prediction of potential habitat suitability of snow leopard (Panthera uncia) and blue sheep (Pseudois nayaur) and niche overlap in the parts of western Himalayan region |
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2023 |
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Geo: Geography and Environment |
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10 |
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e00121 |
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1-15 |
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bioclimatic variables, habitat suitability, MaxEnt model, niche overlap, western Himalayan region |
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The snow leopard (Panthera uncia) and blue sheep (Pseudois nayaur) are the inhabitants of remote areas at higher altitudes with extreme geographic and climatic conditions. The habitats of these least-studied species are crucial for sustaining the Himalayan ecosystem. We employed the Maximum Entropy (MaxEnt) species distribution model to predict the potential habitat suitability of snow leopards and blue sheep and extracted common overlapped niches. For this, we utilised presence location, bio-climatic and environmental variables, and correlation analysis was applied to reduce the negative impact of multicollinearity. A total of 134 presence locations of snow leopards and 64 for blue sheep were selected from the Global Biodiversity Information Facility (GBIF). The annual mean temperature (Bio1) was found to be the most useful and highly influential factor to predict the potential habitat suitability of snow leopards. Annual mean temperature, annual precipitation and isothermality were the major influencing factors for blue sheep habitat suitability. Highly influential bio-climatic, topographic and environmental variables were integrated to construct the model for predicting habitat suitability. The area under the curve (AUC) values for snow leopard (0.87) and blue sheep (0.82) showed that the models are under good representation. Of the total area investigated, 47% was suitable for the blue sheep and 38% for the snow leopards. Spatial habitat assessment revealed that nearly 11% area from the predicted suitable habitat class of both species was spatially matched (overlapped), 48.6% area was unsuitable under niche overlap and 40.5% area was spatially mismatched niche. The presence of snow leopards and blue sheep in some highly suitable areas was not observed, yet such areas have the potential to sustain these elusive species. The other geographical regions interested in exploring habitat suitability may find the methodological framework adopted in this study useful for formulating an effective conservation policy and management strategy. |
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SLN @ rakhee @ |
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1719 |
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Koshkarev, E.P. |
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Title |
Range Structure, Numbers and Population Status of the Snow Leopard in the Tien Shan |
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1992 |
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Snow Line |
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x |
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2 |
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2-6 |
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Tian-Shan; surveys; status; distribution; density; Pamir; habitat; browse; Tien-Shan; 4690 |
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International Snow Leopard Trust |
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Seattle |
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Translated by Marina Proutkina and Kathleen Braden |
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SLN @ rana @ 456 |
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575 |
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Fox, J.L. |
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Snow leopard conservation in the wild – a comprehensive perspective on a low density and highly fragmented population |
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1994 |
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3-15 |
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conservation; habitat; distribution; range; tibetan-plateau; Himalaya; Taklimakan-desert; Karakoram; Hindu-kush; Pamir; Kun-Lun; Tien-Shan; Altay; Cites; status; Afghanistan; Bhutan; China; India; Kazakhstan; Kyrgyzstan; Mongolia; Nepal; Pakistan; Russia; Tajikistan; Uzbekistan; protected-area; parks; park; reserve; refuge; research; management; kazakstan; browse; tibetan; plateau; taklimakan; desert; hindu; protected; area; 2630 |
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Islt |
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Usa |
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J.Fox; J.Du |
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Full text available at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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SLN @ rana @ 216 |
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304 |
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Jackson, P. |
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The Snow Leopard: A Flagship for Biodiversity in the Mountains of Central Asia |
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1997 |
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Afghanistan; Bhutan; China; India; kazakstan; Kyrgyzstan; Mongolia; Nepal; Pakistan; Russia; Tajikistan; Uzbekistan; ecology; distribution; parks; park; reserve; status; refuge; habitat; herders; biodiversity; herder; livestock; prey; protected-area; Kazakhstan; protected; area; browse; 2030 |
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Allied Press |
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Lahore, Pakistan |
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R.Jackson |
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Full Text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad, PakistanDate of Copyright: 1997 |
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SLN @ rana @ 314 |
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429 |
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Nolte-Wilson, B. |
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Soveriegn of menaced realm: the snow leopard |
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1990 |
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Natura WWF-Pakistan Newsletter |
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9 |
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3-9 |
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Pakistan; browse; behavior; Chitrol-Gol; baiting; spays; pug; scrapes; habitat; 3130 |
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Full Text at URL |
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SLN @ rana @ 171 |
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723 |
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Kreuzberg, E.; Esipov, A.; Bykova, E.; Vashetko, E. |
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Number, Distribution and Status of Habitats for Snow Leopard in Gissar Nature Reserve and Neighboring Areas |
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Miscellaneous |
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2000 |
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xvi |
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Uzbekistan; Gissar; habitat; distribution; status; field-study; research; surveys; poaching; hunting; grazing; livestock; browse; 4440 |
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Islt |
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Seattle, Wa |
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Full text at URLJournal Title: Snow Line |
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SLN @ rana @ 432 |
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595 |
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Khan, A. |
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Snow Leopard: Integral to Chitral Gol National Park |
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1998 |
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xvi |
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5 |
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Chitral-Gol; Pakistan; survey; habitat; seasonal-occurence; status; Slims; Islt; feces; pugmarks; browse; 4490 |
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Islt |
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Seattle |
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Full Text at URLJournal Title: Snow Line |
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SLN @ rana @ 437 |
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529 |
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